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A Brief Discussion on Laser Equipment Upgrade Design

2020.06.15

Laser Equipment Upgrade Design: When laser welding different materials, the precise positioning of the laser beam plays a crucial role in determining the final weld quality—this is especially true for butt joints compared to lap joints. For example, when welding hardened steel gears onto low-carbon steel drums, properly controlling the laser beam’s position can help produce a weld characterized primarily by low‑carbon constituents that exhibit excellent crack resistance. In certain applications, the geometry of the workpiece to be welded may require a specific angle of laser beam deflection. As long as the deflection angle between the beam axis and the joint plane remains within 100 degrees, the workpiece’s absorption of laser energy will not be adversely affected.

Laser Equipment Upgrade: Applications of Laser Cutting Machines in the Kitchenware Industry

2020.06.09

Laser equipment upgrade manufacturers have found that laser cutting machines offer distinct advantages over traditional sheet‑metal cutting methods. They feature fast cutting speeds and high production efficiency; deliver excellent cut quality with narrow kerfs; exhibit strong material compatibility and no tool wear; and can quickly and precisely cut and form both simple and complex parts. With a high degree of automation, simple operation, low labor intensity, and zero pollution, laser cutting also boasts low production costs and strong economic returns—plus, the technology enjoys a long effective service life.

Laser Equipment Retrofit: How to Adjust the Optical Path of a Laser Cutting Machine

2020.06.04

Laser Equipment Modification: How to Adjust the Laser Cutting Machine’s Optical Path – Adjusting the First Beam: Use masking tape to affix it over the alignment target hole on Reflector A. Manually jog the laser (please note that the power should not be set too high at this stage) and make fine adjustments to the base of the laser. Adjust Reflector A and the laser tube holder so that the beam shines directly into the center of the target hole, ensuring that the beam is not obstructed.

How to Modify Laser Equipment Based on Different Welding Materials

2020.06.03

When laser welding different materials, the position of the laser beam plays a crucial role in determining weld quality—this is especially true for butt joints compared to lap joints. For example, when hardening steel gears are welded onto low-carbon steel barrels, precisely controlling the laser beam’s position helps produce a weld composed primarily of low-carbon constituents, which exhibits excellent crack resistance. In certain applications, laser equipment modifications may be required to accommodate the geometric shape of the workpiece, necessitating a specific angle of laser beam deflection. When the deflection angle between the beam axis and the joint surface remains within 100 degrees, the workpiece’s absorption of laser energy is not adversely affected.

Prospects for Laser Equipment Upgrade Technology

2020.05.19

The advancement of electronic technology, computer microelectronics enclosures, and automation technology has driven the development of welding automation. In particular, the introduction of enabling technologies such as CNC technology, flexible manufacturing systems, and information processing technology has spurred a revolutionary evolution in laser equipment upgrade technologies.

Laser Equipment Upgrade

2020.05.18

Laser applications span an incredibly wide range of fields. With the continuous advancement of laser equipment, laser welding machines—representing a key direction in laser applications—are the result of integrating traditional machining technologies with modern laser technology. Today, I’d like to discuss the development trends of laser welding machines and the directions for upgrading laser equipment.
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